School of Medicine, Shanghai University, Shanghai 200444, PR China.
College of Sciences, Shanghai University, Shanghai 200444, PR China.
Analyst. 2024 Feb 26;149(5):1571-1578. doi: 10.1039/d3an02133e.
Paper-based ratiometric fluorescence sensors are normally prepared using two or more types of fluorescent materials on a paper chip for simple, low-cost and fast detection. However, the choice of multi-step and one-step modifications on the paper chip affects the analytical performance. Herein, a novel paper-based dual-emission ratiometric fluorescence sensor was designed for the selective detection of tetracycline (TC). Carbon dots (CDs) modified with Eu were combined with a sealed paper-based microfluidic chip by two methods: one-step grafting of CDs-Eu on paper and step-by-step grafting of CDs and Eu on paper. The analytical performance was studied and optimized respectively. The red fluorescence of Eu at 450 nm is enhanced and the blue fluorescence of CDs at 617 nm is quenched by energy transfer in the presence of TC. Under optimal conditions, TC is selectively determined in the linear range from 0.1 μM to 100 μM with a detection limit of 0.03 μM by the step-by-step grafting method. In addition, the sealed paper chip could effectively prevent pollution and volatilization from the reagent. This technique has been used to analyze TC in seafood aquaculture water with satisfactory results.
基于纸的比率荧光传感器通常使用两种或更多类型的荧光材料在纸芯片上进行制备,用于简单、低成本和快速检测。然而,纸芯片上的多步和一步修饰的选择会影响分析性能。本文设计了一种新型的基于纸的双发射比率荧光传感器,用于四环素(TC)的选择性检测。通过两种方法将铕修饰的碳点(CDs)与密封的纸基微流控芯片结合:在纸上一步接枝 CDs-Eu 和在纸上逐步接枝 CDs 和 Eu。分别对分析性能进行了研究和优化。在 TC 的存在下,通过能量转移增强了 450nm 处 Eu 的红色荧光,猝灭了 617nm 处 CDs 的蓝色荧光。在最佳条件下,通过逐步接枝法在 0.1μM 至 100μM 的线性范围内选择性测定 TC,检测限为 0.03μM。此外,密封的纸芯片可以有效防止试剂的污染和挥发。该技术已用于分析水产养殖水中的 TC,结果令人满意。